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305 related items for PubMed ID: 36056479
1. Land-use systems regulate carbon geochemistry in the temperate Himalayas, India. Kumar SS, Mir SA, Wani OA, Babu S, Yeasin M, Bhat MA, Hussain N, Ali Wani AI, Kumar R, Yadav D, Dar SR. J Environ Manage; 2022 Oct 15; 320():115811. PubMed ID: 36056479 [Abstract] [Full Text] [Related]
2. Climate plays a dominant role over land management in governing soil carbon dynamics in North Western Himalayas. Wani OA, Sharma V, Kumar SS, Babu S, Sharma KR, Rathore SS, Marwaha S, Ganai NA, Dar SR, Yeasin M, Singh R, Tomar J. J Environ Manage; 2023 Jul 15; 338():117740. PubMed ID: 37027954 [Abstract] [Full Text] [Related]
3. Converting primary forests to cultivated lands: Long-term effects on the vertical distribution of soil carbon and biological activity in the foothills of Eastern Himalaya. Ansari MA, Choudhury BU, Mandal S, Jat SL, Meitei CB. J Environ Manage; 2022 Jan 01; 301():113886. PubMed ID: 34619594 [Abstract] [Full Text] [Related]
4. Soil microbial and enzyme activities in different land use systems of the Northwestern Himalayas. Mir YH, Ganie MA, Shah TI, Bangroo SA, Mir SA, Shah AM, Wani FJ, Qin A, Rahman SU. PeerJ; 2023 Jan 01; 11():e15993. PubMed ID: 37780386 [Abstract] [Full Text] [Related]
5. Impact of progressive and retrogressive land use changes on ecosystem multifunctionality: Implications for land restoration in the Indian Eastern Himalayan region. Kurmi B, Nath AJ, Sileshi GW, Pandey R, Das AK. Sci Total Environ; 2024 Feb 20; 912():169197. PubMed ID: 38101647 [Abstract] [Full Text] [Related]
6. Soil carbon and nitrogen stocks along the altitudinal gradient of the Darjeeling Himalayas, India. Devi SB, Sherpa SSSS. Environ Monit Assess; 2019 May 11; 191(6):361. PubMed ID: 31079209 [Abstract] [Full Text] [Related]
7. Variation of biomass and carbon pools with forest type in temperate forests of Kashmir Himalaya, India. Dar JA, Sundarapandian S. Environ Monit Assess; 2015 Feb 11; 187(2):55. PubMed ID: 25638061 [Abstract] [Full Text] [Related]
8. Long-term impact of conservation agriculture and diversified maize rotations on carbon pools and stocks, mineral nitrogen fractions and nitrous oxide fluxes in inceptisol of India. Parihar CM, Parihar MD, Sapkota TB, Nanwal RK, Singh AK, Jat SL, Nayak HS, Mahala DM, Singh LK, Kakraliya SK, Stirling CM, Jat ML. Sci Total Environ; 2018 Nov 01; 640-641():1382-1392. PubMed ID: 30021305 [Abstract] [Full Text] [Related]
9. Soil organic carbon pools and carbon management index under different land use systems in North western Himalayas. Mir YH, Ganie MA, Shah TI, Aezum AM, Bangroo SA, Mir SA, Dar SR, Mahdi SS, Baba ZA, Shah AM, Majeed U, Minkina T, Rajput VD, Dar AA. PeerJ; 2023 Nov 01; 11():e15266. PubMed ID: 37304860 [Abstract] [Full Text] [Related]
10. Long-term impacts of land-use change on dynamics of tropical soil carbon and nitrogen pools. Yang JC, Huang JH, Pan QM, Tang JW, Han XG. J Environ Sci (China); 2004 Nov 01; 16(2):256-61. PubMed ID: 15137650 [Abstract] [Full Text] [Related]
11. Impact of deforestation and temporal land-use change on soil organic carbon storage, quality, and lability. Amoakwah E, Lucas ST, Didenko NA, Rahman MA, Islam KR. PLoS One; 2022 Nov 01; 17(8):e0263205. PubMed ID: 35947542 [Abstract] [Full Text] [Related]
12. Impact of land configuration and organic nutrient management on productivity, quality and soil properties under baby corn in Eastern Himalayas. Babu S, Singh R, Avasthe RK, Yadav GS, Das A, Singh VK, Mohapatra KP, Rathore SS, Chandra P, Kumar A. Sci Rep; 2020 Sep 30; 10(1):16129. PubMed ID: 32999388 [Abstract] [Full Text] [Related]
13. Conversion of farmland to forest or grassland improves soil carbon, nitrogen, and ecosystem multi-functionality in a subtropical karst region of southwest China. Zhang L, Du H, Song T, Yang Z, Peng W, Gong J, Huang G, Li Y. Sci Rep; 2024 Jul 31; 14(1):17745. PubMed ID: 39085481 [Abstract] [Full Text] [Related]
14. Impacts of climate and land use on N2 O and CH4 fluxes from tropical ecosystems in the Mt. Kilimanjaro region, Tanzania. Gütlein A, Gerschlauer F, Kikoti I, Kiese R. Glob Chang Biol; 2018 Mar 31; 24(3):1239-1255. PubMed ID: 29044840 [Abstract] [Full Text] [Related]
15. Losses of soil carbon by converting tropical forest to plantations: erosion and decomposition estimated by δ(13) C. Guillaume T, Damris M, Kuzyakov Y. Glob Chang Biol; 2015 Sep 31; 21(9):3548-60. PubMed ID: 25707391 [Abstract] [Full Text] [Related]
16. Subarctic soil carbon losses after deforestation for agriculture depend on permafrost abundance. Peplau T, Schroeder J, Gregorich E, Poeplau C. Glob Chang Biol; 2022 Sep 31; 28(17):5227-5242. PubMed ID: 35713970 [Abstract] [Full Text] [Related]
17. Comparative analysis of soil organic carbon and soil properties in landscapes of Kerala: insights from the Western Ghats of India. Surendran U, Raja P, Liu K, Bilotto F, Sridevi G. Environ Monit Assess; 2024 Aug 24; 196(9):838. PubMed ID: 39180704 [Abstract] [Full Text] [Related]
18. Altitudinal variation of soil organic carbon stocks in temperate forests of Kashmir Himalayas, India. Ahmad Dar J, Somaiah S. Environ Monit Assess; 2015 Feb 24; 187(2):11. PubMed ID: 25619695 [Abstract] [Full Text] [Related]
19. Land-use conversion and changing soil carbon stocks in China's 'Grain-for-Green' Program: a synthesis. Deng L, Liu GB, Shangguan ZP. Glob Chang Biol; 2014 Nov 24; 20(11):3544-56. PubMed ID: 24357470 [Abstract] [Full Text] [Related]
20. Land cover changes and carbon dynamics in Central India's dry tropical forests: A 25-year assessment and nature-based eco-restoration approaches. Thakur TK, Swamy SL, Thakur A, Mishra A, Bakshi S, Kumar A, Altaf MM, Kumar R. J Environ Manage; 2024 Feb 24; 351():119809. PubMed ID: 38113791 [Abstract] [Full Text] [Related] Page: [Next] [New Search]